Light-propelled Janus-like organic nanomotors for photo-mechanical cancer therapy
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UV-visible absorption spectra were recorded on a Shimadzu UV-2600 spectrophotometer, and fluorescence spectra were recorded on a Horiba Fluoromax-4 fluorescence spectrophotometer. The detailed morphology of the nanoparticles was obtained by transmission electron microscopy (TEM, JEM-1400F plus). Dynamic light scattering using Malvern Zetasizer Nano-S90 was used to determine the hydrodynamic diameter of the nanoparticles. Changes in temperature under the laser were recorded by FLUKE thermal camera. Nanoparticle trajectories were monitored by a self-constructed on-line digital holographic microscope (DHM). Confocal laser scanning microscopy (CLSM) characterization was performed using a confocal laser scanning microscope (Zeiss LSM7 DUO). MTT, LDH, and Elisa assays were performed using a Biotek ELX80 from Thermo Fisher Scientific. Flow testing was performed using a BD LSRFortessa X-20 flow cytometer.
Institutions
- South China University of TechnologyGuangdong, Guangzhou
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Funders
- National Key R&D Program of ChinaGrant ID: 2024YFA1307600, 2024YFA1307601
- Key-Area Research and Development Program of Guangdong ProvinceGrant ID: 2024B0101040001
- Guangdong Provincial Key Laboratory of Luminescence from Molecular AggregatesGrant ID: 2023B1212060003
- Guangdong Basic and Applied Basic Research FoundationGrant ID: 2023B1515040003
- Guangzhou Municipal Science and Technology BureauGrant ID: 2024A04J2466